首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Structural characterization of phosphatidyl-myo-inositol mannosides from Mycobacterium bovis Bacillus Calmette Guerin by multiple-stage quadrupole ion-trap mass spectrometry with electrospray ionization. II. Monoacyl- and diacyl-PIMs
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Structural characterization of phosphatidyl-myo-inositol mannosides from Mycobacterium bovis Bacillus Calmette Guerin by multiple-stage quadrupole ion-trap mass spectrometry with electrospray ionization. II. Monoacyl- and diacyl-PIMs

机译:牛分枝杆菌芽孢杆菌Calmette Guerin的磷脂酰肌醇甘露糖苷的结构表征通过多级四极杆离子阱质谱联用电喷雾电离。二。单酰基和二酰基PIM

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The multiple-stage ion-trap mass spectrometric approaches towards to the structural characterization of the monoacyl-PIM (triacylated PIM) and the diacyl-PIM (tetracylated PIM), namely, the PEA (diacylated PIM) consisting of one or two additional fatty acid substituents attached to the glycoside, respectively, were described. While the assignment and confirmation of the fatty acid substituents on the glycerol backbone can be easily achieved by the methods described in the previous article, the identity of the glycoside moiety and its acylation state can be determined by the observation of a prominent acylglycoside ion arising from cleavage of the diacylglycerol moiety ([M - H - diacylglycerol](-)) in the MS2-spectra of monoacyl-PIM and diacyl-PIM. The distinction of the fatty acid substituents on the 2-O-mannoside (i.e., R3CO2H) from that on the inositol (i.e., R4CO2H) is based on the findings that the MS3-spectrum of [M - H - diacylglycerol](-) contains a prominent ion arising from further loss of the fatty acid at the 2-O-mannoside (i.e., the [M - H - diacylglycerol - R3CO2H](-) ion), while the ion arising from loss of the fatty acid substituent at the inositol (i.e., the [M - H - diacylglycerol - R4CO2H](-) ion) is of low abundance. The fatty acyl moiety on the inositol can also be identified by the product-ion spectrum from MS4 of the [M - H - diacylglycerol - R3CO2H](-) ion, which gives rise to a prominent ion corresponding to loss of R4CO2H. An [M - H - acylmannose](-) ion was also observed in the MS2-spectra and, thus, the identity of the fatty acid substituent attached to 2-O-mannoside can be confirmed. The combined information obtained from the multiple-stage product-ion spectra from MS2, MS3, and MS4 permit the assignment of the complex structures of monoacyl-PIMs and diacyl-PIMs in a mixture isolated from M. bovis Bacillus Calmette Guerin.
机译:采用多阶段离子阱质谱法对单酰基-PIM(三酰基PIM)和二酰基-PIM(四酰基PIM),即由一种或两种其他脂肪酸组成的PEA(二酰基PIM)进行结构表征描述了分别连接至糖苷的取代基。尽管可以通过上一篇文章中描述的方法轻松实现甘油主链上脂肪酸取代基的分配和确证,但糖苷部分的身份及其酰化状态可以通过观察由单酰基-PIM和二酰基-PIM的MS2-光谱中的二酰基甘油部分([MH-二酰基甘油](-))的裂解。 2-O-甘露糖苷(即R3CO2H)上的脂肪酸取代基与肌醇(即R4CO2H)上的脂肪酸取代基的区别基于以下发现:[M-H-二酰基甘油](-)的MS3-光谱包含一个显着的离子,该离子是由于2-O-甘露糖苷处的脂肪酸进一步损失而引起的(即[M-H-二酰基甘油-R3CO2H](-)离子),而该离子则是由于脂肪酸取代基的损失而引起的。肌醇(即[M-H-二酰基甘油-R4CO2H](-)离子)的丰度较低。肌醇上的脂肪酰基部分也可以通过[M-H-二酰基甘油-R3CO2H](-)离子的MS4产物离子谱来鉴定,这会产生一个突出的离子,对应于R4CO2H的损失。在MS 2-光谱中也观察到[MH-酰基甘露糖](-)离子,因此,可以确认附着在2-O-甘露糖苷上的脂肪酸取代基的身份。从MS2,MS3和MS4的多级产物离子质谱图获得的组合信息可确定从牛分枝杆菌芽孢杆菌Calmette Guerin分离的混合物中单酰基PIM和二酰基PIM的复杂结构。

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